CAN GENETIC VARIATIONS IN THE DEPLETION PROCESS OF STARCH STOCKS BE DRIVING CONTEMPORARY MICROEVOLUTION IN Toona ciliata VAR. australis?

Author:

Abreu Junior Aureo Aparecido1,Rosado Sebastião Carlos da Silva1

Affiliation:

1. Federal University of Lavras, Brazil

Abstract

ABSTRACT A simple method to establish a relationship between physiological responses of plants and thermal stresses is by quantifying the number of parenchyma cells with remaining starch stocks. The knowledge of the dynamic of starch depletion can be achieved by using statistical models such as thermal performance curves (TPC). The aim of this study was to quantify radial parenchyma cells with remaining starch stocks in order to evaluate changes in TPC regarding increases in temperature over seedlings of Toona ciliata (Australian Red cedar), in different heat induced treatments of matching both exposure time and temperature; besides of the assessment of variations in the TPC’s and also to understand whether these changes are over genetic control. We used a protocol of heat induced treatment in the stems of the seedlings, anatomical cuts and staining with neutral red for the commercial clone BV1120, which was used as template to fit polynomial curves of TPC. After these mathematical fits and validation of these models with lignotubers of Eucalyptus urophylla, we defined a depletion time of 50% (TD50) from the starch stocks for each thermal treatment, so we could compare the performance for the others five commercial clones: BV1110, BV1121, BV1151, BV1210 and BV1321. The R2 values were all above 85%. Results indicated that clone BV1110 had the highest value for remaining starch stocks at all heat induced treatments, in contrast to the clone BV1210, which had the lowest values for remaining starch stocks. The variation of the starch content indicates high values of broad-sense heritability, ranging from 97,43 to 98,48%, suggesting a possible contemporary microevolution process undergoing in Australian Red cedar. Thus, further selections can help improving the tolerance of Australian Red cedar to increasing temperatures on the environment.

Publisher

FapUNIFESP (SciELO)

Subject

Forestry

Reference30 articles.

1. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests;ALLEN C. D.;Forest Ecology and Management,2010

2. Studies of the lignotubers of Eucalyptus gummifera (Gaertn. and Hochr.) II. Anatomy;BAMBER R. K.;Australian Journal of Botany,1977

3. Fire damage, mortality, and suckering in aspen;BROWN J.K.;Canadian Journal of Forest Research,1987

4. Dynamic changes in hydraulic conductivity in petioles of two savanna tree species: factors and mechanisms contributing to the refilling of embolized vessels.;BUCCI S. J.;Plant, Cell & Environment,2003

5. Increase in carbohydrate status in the wood and bark tissues of Hevea brasiliensis by double-cut alternative tapping system;CHANTUMA P.;Kasetsart Journal (Natural Science),2007

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