S
3
P
0
S
3
P
1
7.10 c
7.07 c
Note: The numbers followed by the same letter on the
same row or column are not significantly
different at the 5% Duncan test level and
1%(N
2
O
1
: NAA 100 ppm + kinetin 50 ppm +
palmitic acid 2%)
The table shows that stimulant application (S)
has very significant effect on the plugging index
(IP). The lowest plugging index was found in S
1
treatment with application of N
2
O
1
formulation, and
the highest on S
2
treatment with etephon 1.5% +
N
2
O
1
formulation. The decrease in the plugging
index by application of N
2
O
1
formulation compared
with control (S
0
) is 23,04%. PEG application has
very significant effect on the 23,04 index that is
lowering the 23,04index by 10.45%.
The combination of stimulant and PEG has
significant effect on the plugging index. The lowest
plugging index was found in S
1
P
1
treatment (N
2
O
1
formulation and PEG), while the highest found in
S
2
P
1
treatment. The decrease in the block index by
application of N
2
O
1
and PEG formulation compared
with the controls is 43,32%.
Figure 3: Histogram of Plugging Indexwith combination
of Stimulant and PEG Treatment on 6 years old of clone
PB 260.
The decrease in plugging index with N
2
O
1
formulation is caused by increased energy from the
palmitic acid contained in the formulation. Such acid
will produce ATP (energy) derived from
Tricarboxylic acid (Respiration). ATP will be used
as a source of energy for the formation of Iso
Pentenyl Pyrofospat (IPP) which will produce
isoprene (latex) (Rahayuet al, 2017; Rahayuet al,
2017).
Accordingly, Zulhilmiet al (Zulhilmiet al,2012)
confirm that photosynthesis activity will increase
with the provision of PEG so that NADH-oxidase is
also increases. Increased NADH-oxidase is followed
by increased Super Oxide Dismutase (SOD)
enzymes that play a role in stabilizing lutoid. Stable
lutoid will decrease the plugging index so latex will
flow and latex production becomes increased
(Rahayuet al, 2017; Rahayu, 2017).
Accordingly, Sumarmadji (Sumarmadji,1999)
states that if the production increases the plugging
index will decrease, in other words plugging index is
negatively correlated with production.
4 CONCLUSION
1. Stimulant application is significantly lead to
increased production; reduce plugging index,
increase bark thickness and number of latex
vessels.
2. PEG application also encourage increased
production (g/p/s), bark thickness, number of
latex vessels and decreasing the plugging
index
3. The combination of stimulant and PEG
increase latex production, bark thickness and
the number of latex vessels, and decreasing
the plugging index.
REFERENCES
Andriyanto, M dan Darojat, M.R. 2016. Potensi
Polyethylen Glycol (PEG) sebagai Stimulan Lateks
pada Tanaman Karet (Heveabrasiliensis Muel.Arg).
Agrovigor 9(1).
Anwar, C. 2012. Prospek Karet Masih Bagus. Media
Perkebunan Edisi 106. November 2012, 68-69.
Arif, M., Tariq, M., Khan, M.U and Munir, I. 2010. Effect
of Seed Prinning on Growht Parameter of Soybean. J
Bot. 43(4). 2803-2812.
Boerhendhy, I. 2013. Penggunaan Stimulan Sejak Awal
Penyadapan untuk Meningkatkan Produksi Klon IRR
39. Jurnal Penelitian Karet, 2013, 31(2):117-126.
Koryati, T. 2016. Upaya Mempercepat Matang Sadap dan
Karakter Produksi Lateks Beberapa Klon Karet
melalui Penggunaan Zat Pengatur Tumbuh. Disertasi
Program Doktor Ilmu Pertanian. Pascasarjana Fakultas
Pertanian Universitas Sumatera Utara.
Krishnakumar, R., R.L. Helen., P.K. Ambily dan J. Jacob.
2011. A Modified Stimulation Method in
Heveabrasiliensis for Reducing Oxidative Stress.
IRRDB International Rubber Conference Thailand,
15-16 Dec 2011.
Rahayu, M.S., Siregar. L.A.M., Purba, E., Tistama, R.
2016. Pengaruh Waktu Aplikasi dan Pemberian PEG
TerhadapProduksiKaret (HeveabrasilliensisMuel.Arg)
pada Klon PB 260. Prosiding Seminar Nasional
PERAGI. Bogor.
0.00
5.00
10.00
S0P0 S0P1 S1P0 S1P1 S2P0 S2P1 S3P0 S3P1
Plugging Index (%)
Giving Stimulants dan PEG